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首页> 外文期刊>Journal of paleolimnology >Regional environmental change versus local signal preservation in Holocene thermokarst lake sediments: A case study from Herschel Island, Yukon (Canada)
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Regional environmental change versus local signal preservation in Holocene thermokarst lake sediments: A case study from Herschel Island, Yukon (Canada)

机译:全新世湖沉积物的区域环境变化与本地信号保存 - 育空育舍岛(加拿大)的案例研究

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摘要

Thermokarst lakes cover nearly one fourth of ice-rich permafrost lowlands in the Arctic. Sediments from an athalassic subsaline thermokarst lake on Herschel Island (69A degrees 36'N; 139A degrees 04'W, Canadian Arctic) were used to understand regional changes in climate and in sediment transport, hydrology, nutrient availability and permafrost disturbance. The sediment record spans the last similar to 11,700 years and the basal date is in good agreement with the Holocene onset of thermokarst initiation in the region. Electrical conductivity in pore water continuously decreases, thus indicating desalinization and continuous increase of lake size and water level. The inc/coh ratio of XRF scans provides a high-resolution organic-carbon proxy which correlates with TOC measurements. XRF-derived Mn/Fe ratios indicate aerobic versus anaerobic conditions which moderate the preservation potential of organic matter in lake sediments. The coexistence of marine, brackish and freshwater ostracods and foraminifera is explained by (1) oligohaline to mesohaline water chemistry of the past lake and (2) redeposition of Pleistocene specimens found within upthrusted marine sediments around the lake. Episodes of catchment disturbance are identified when calcareous fossils and allochthonous material were transported into the lake by thermokarst processes such as active-layer detachments, slumping and erosion of ice-rich shores. The pollen record does not show major variations and the pollen-based climate record does not match well with other summer air temperature reconstructions from this region. Local vegetation patterns in small catchments are strongly linked to morphology and sub-surface permafrost conditions rather than to climate. Multidisciplinary studies can identify the onset and life cycle of thermokarst lakes as they play a crucial role in Arctic freshwater ecosystems and in the global carbon cycle of the past, present and future.
机译:Thermokarst Lakes在北极覆盖了近四分之一的冰冷的永久冻土低地。 Herschel Island上的Athalassic Supmaline Thermokarst湖(69A度36'n; 139A度04'W,加拿大北极)的沉积物用于了解气候和沉积物运输,水文,营养可用性和永久冻土干扰的区域变化。沉积物记录跨越上一个类似于11,700岁,基础日期与该地区的热致发起全新世发起吻合良好。孔隙水中的电导率连续降低,从而表明湖泊尺寸和水位的脱盐和连续增加。 XRF扫描的Inc / COH比率提供了一种高分辨率有机碳代理,其与TOC测量相关。 XRF衍生的Mn / Fe率表示有氧与厌氧条件,适度适中湖泊沉积物中有机物质的保存潜力。海洋,咸水和淡水滴答物和面包酰胺的共存(1)寡核苷酸对过去湖泊的寡核苷酸和(2)在湖周围的较纯的海洋沉积物中发现的更新沉积。当通过热潮流的过程(如有源层脱离,富含冰雪峡湾)的钙质化石和表发从湖泊运输到湖泊中,鉴定了集水干扰剧集。花粉记录没有显示出主要变化,与来自该地区的其他夏季空气温度重建不太匹配。小型流域的本地植被模式与形态和亚表面永久性条件强烈相关,而不是气候。多学科研究可以识别Thermokarst Lakes的起始和生命周期,因为它们在北极淡水生态系统和过去,现在和未来的全球碳循环中发挥着至关重要的作用。

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